- Heilongjiang Cyclone Tower and Swirl Tower Differences, Nationwide Shipping

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Shandong Zhongcheng Liangchuang Environmental Protection Technology Development Co., Ltd. has been committed to the design, research and development, and production of coating products and environmental purification products for a long time. The company boasts strong technical capabilities, advanced processing equipment, refined manufacturing processes, comprehensive testing methods, and a sound quality assurance system.Certificate System.

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Vortex TowerApplication Fields:
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Wet polishing dust removal, paint spray exhaust pretreatment, boiler dust removal, smelting furnace black smoke exhaust pretreatment, industrial oil smoke pretreatment, and other industrial exhaust pretreatment
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Design of the Cyclone TowerPrinciple - Turbulent TowerThe design utilizes the centrifugal force of the cyclone separator to separate large particles and fibrous materials from the dust. These fall from the top down into the dust collection box. Some light, fine dust particles are then directed through the top pipe into the water-washing cyclone tower, where, due to centrifugal force, the dust is thrown against the tower wall and falls downward into a flowing absorbent liquid. As the dust particles pass rapidly through the cyclone tower plates, the absorbent liquid on the blades is blown into very small droplets. Through mechanisms such as collision and interception, dust particles, absorbent liquid, and droplets collide with each other.Particle size continuously increases. Under the guiding action of the cyclone tray, the rotational motion intensifies, generating strong centrifugal force. Dust particles easily detach from the exhaust gas and are thrown towards the tray wall, where they flow to the bottom of the tray under gravity, achieving gas-solid separation. For the fine dust particles in the exhaust gas, not all can be captured after passing through the tray. A certain number of particles escape. After passing through multiple trays, the fine dust particles coalesce, increase in mass, and are captured and separated, then entering the upper multi-faceted spherical adsorption filtering layer for dehydration. Due to the large surface area of the multi-faceted spheres, the adsorption capacity is strong. The filtered gas is then discharged outdoors through a vacuum fan.
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